Title
Approximate robust optimization of time-periodic stationary states with application to biochemical processes
Abstract
In this paper we present techniques to optimize periodic stationary states of processes that depend on uncertain parameters. We start with an introduction to approximate robust counterpart formulations and specialize on systems with many uncertain parameters but only a small number of inequality constraints. The presented approximate robust programming formulation has an interesting application for stable time-periodic systems where the steady state is affected by uncertainties. In order to demonstrate this, we apply our techniques to a fermentation process optimal in a periodic operation. We discuss this optimal periodic solution and robustify it with respect to unknown model parameters.
Year
DOI
Venue
2009
10.1109/CDC.2009.5400684
CDC
Keywords
Field
DocType
biochemistry,constraint theory,fermentation,nonlinear programming,robust control,uncertain systems,approximate robust optimization,approximate robust programming formulation,biochemical process,fermentation process,inequality constraints,time-periodic stationary states,time-periodic system stability,uncertain parameters,Adjoint Differential Equations,Approximate Robust Optimization,Periodic Biochemical Processes
Linear approximation,Mathematical optimization,Optimal control,Computer science,Control theory,Robust optimization,Nonlinear programming,Robustness (computer science),Robust control,Stationary state,Periodic graph (geometry)
Conference
ISSN
Citations 
PageRank 
0743-1546
3
0.42
References 
Authors
7
4
Name
Order
Citations
PageRank
Boris Houska121426.14
Filip Logist26410.75
Jan F. M. Van Impe35811.27
Moritz Diehl41343134.37